Glycosyl-phosphatidylinositol (GPI)-anchored membrane association of the porcine reproductive and respiratory syndrome virus GP4 glycoprotein and its co-localization with CD163 in lipid rafts

文献类型: 外文期刊

第一作者: Du, Yijun

作者: Du, Yijun;Song, Cheng;Yoo, Dongwan;Li, Gang;Du, Yijun;Pattnaik, Asit K.;Pattnaik, Asit K.;Li, Gang

作者机构:

关键词: CD163;GP4;GPI;Infectious clone;Lipid rafts;Membrane association;PRRS

期刊名称:VIROLOGY ( 影响因子:3.616; 五年影响因子:3.967 )

ISSN:

年卷期:

页码:

收录情况: SCI

摘要: The porcine reproductive and respiratory syndrome virus (PRRSV) glycoprotein 4 (GP4) resembles a typical type I membrane protein in its structure but lacks a hydrophilic tail at the C-terminus, suggesting that GP4 may be a lipid-anchored membrane protein. Using the human decay-accelerating factor (DAF; CD55), a known glycosyl-phosphatidylinositol (GPI) lipid-anchored protein, chimeric constructs were made to substitute the GPI-anchor domain of DAF with the putative lipid-anchor domain of GP4, and their membrane association and lipase cleavage were determined in cells. The DAF-GP4 fusion protein was transported to the plasma membrane and was cleaved by phosphatidylinositol-specific phospholipase C (PI-PLC), indicating that the C-terminal domain of GP4 functions as a GPI anchor. Mutational studies for residues adjacent to the GPI modification site and characterization of respective mutant viruses generated from infectious cDNA clones show that the ability of GP4 for membrane association corresponded to virus viability and growth characteristics. The residues T158 (ω -2, where ω is the GPI moiety at E160), P159 (ω -1), and M162 (ω + 2) of GP4 were determined to be important for virus replication, with M162 being of particular importance for virus infectivity. The complete removal of the peptide-anchor domain in GP4 resulted in a complete loss of virus infectivity. The depletion of cholesterol from the plasma membrane of cells reduced the virus production, suggesting a role of lipid rafts in PRRSV infection. Remarkably, GP4 was found to co-localize with CD163 in the lipid rafts on the plasma membrane. Since CD163 has been reported as a cellular receptor for PRRSV and GP4 has been shown to interact with this receptor, our data implicates an important role of lipid rafts during entry of the virus.

分类号: R37

  • 相关文献

[1]Outbreaks of highly pathogenic porcine reproductive and respiratory syndrome in Jiangxi province, China. Guo, Aijiang,Wu, Guohua,Gong, Wei,Luo, Xuenong,Zheng, Haixue,Jia, Huanjie,Cai, Xuepeng. 2012

[2]Highly virulent porcine reproductive and respiratory syndrome virus emerged in China. Tong, G. -Z.,Zhou, Y. -J.,Hao, X. -F.,Tian, Z. -J.,Tong, G. -Z.,An, T. -Q.,Zhou, T.,Li, G. -X.,Qiu, H. -J.,Wei, T. -C.,Yoo, D.,Yuan, X. -F.. 2008

[3]Linolelaidic acid induces apoptosis, cell cycle arrest and inflammation stronger than elaidic acid in human umbilical vein endothelial cells through lipid rafts. Li, Jing,Rao, Huan,Bin, Qiu,Fan, Ya-Wei,Li, Hong-Yan,Deng, Ze-Yuan,Rao, Huan,Bin, Qiu.

[4]A-type ECG and EGCG dimers inhibit 3T3-L1 differentiation by binding to cholesterol in lipid rafts. Zhu, Wei,Deng, Xiangyi,Peng, Jinming,Li, Chunmei,Li, Chunmei,Zou, Bo. 2017

[5]Influence of N-linked glycosylation of minor proteins of porcine reproductive and respiratory syndrome virus on infectious virus recovery and receptor interaction. Wei, Zuzhang,Tian, Debin,Sun, Lichang,Lin, Tao,Gao, Fei,Liu, Runxia,Tong, Guangzhi,Yuan, Shishan.

[6]Crystal Structure of a CD163 Scavenger Receptor Cysteine-rich Domain Produced in Pichia Pastoris. Ma Hong-Fang,Qiao Song-Lin,Li Rui,Zhang Gai-Ping,Ma Hong-Fang,Zhang Gai-Ping,Huang Ming-Dong,Jiang Long-Guang. 2017

[7]The Crystal Structure of the Fifth Scavenger Receptor Cysteine-Rich Domain of Porcine CD163 Reveals an Important Residue Involved in Porcine Reproductive and Respiratory Syndrome Virus Infection. Ma, Hongfang,Huang, Xiaojing,Zhang, Gai-Ping,Ma, Hongfang,Qiao, Songlin,Zhi, Yubao,Chen, Xin-Xin,Yang, Yanyan,Huang, Xiaojing,Li, Rui,Zhang, Gai-Ping,Jiang, Longguang,Huang, Mingdong.

[8]Generation of an infectious clone of HuN4-F112, an attenuated live vaccine strain of porcine reproductive and respiratory syndrome virus. Zhang, Shanrui,Zhou, Yanjun,Jiang, Yifeng,Li, Guoxin,Yan, Liping,Yu, Hai,Tong, Guangzhi. 2011

[9]Construction of a full-length infectious bacterial artificial chromosome clone of duck enteritis virus vaccine strain. Chen, Liu,Yu, Bin,Hua, Jionggang,Ye, Weicheng,Ni, Zheng,Yun, Tao,Deng, Xiaohui,Zhang, Cun. 2013

[10]Infectious foot-and-mouth disease virus derived from a cloned full-length cDNA of OH/CHA/99. Liu, GQ,Liu, ZX,Xie, QG,Chen, YL,Bao, HF,Liu, XT.

[11]Protection of Chickens against Very Virulent Marek's Disease Virus (MDV) by an Infectious Clone of Meq-Null MDV Vaccination. Cui, Ning,Su, Shuai,Cui, Zhizhong,Sun, Peng,Li, Yanpeng,Zhu, Hongfei,Ding, Jiabo,Kang, Mengjiao.

[12]Infective viruses produced from full-length complementary DNA of swine vesicular disease viruses HK/70 strain. Zheng Haixue,Liu Xinagtao,Shang Youjun,Wu Jinyan,Bai Xingwen,Jin Ye,Sun Shiqi,Guo Huichen,Tian Hong,Feng Xia,Yin Shaunghui,Guo Jianhong,Cong Guozheng,Liu Zaixin,Chang Huiyun,Ma Junwu,Xie Qingge.

[13]Infectious cDNA clones of four viroids in Coleus blumei and molecular characterization of their progeny. Jiang, Dongmei,Gao, Rui,Qin, Lv,Li, Shifang,Jiang, Dongmei,Wu, Zujian,Xie, Lianhui,Hou, Wanying.

[14]An infectious clone of the highly pathogenic porcine reproductive and respiratory syndrome virus: Topology of glycoprotein 3 (GP3) addressing the intrachain disulfide bonds. Feng ChunYan,Yan JingHua,Gao, George F.,Feng ChunYan,Gao, George F.,Liu YueHuan,Gao, George F.. 2011

[15]Characterization of a Novel Polerovirus Infecting Maize in China. Jiang, Guangzhuang,Wu, Jianxiang,Qian, Yajuan,Zhou, Xueping,Jiang, Guangzhuang,Zhou, Xueping,Liu, Yong. 2016

[16]Infectivity of a genotype 4 hepatitis E virus cDNA clone by intrahepatic inoculation of laboratory rats. Zhu, Yumin,Yu, Xiaoming,Si, Fusheng,Yu, Ruisong,Dong, Shijuan,Li, Zhen,Zhu, Yumin,Yu, Ruisong,Dong, Shijuan,Li, Zhen,Yu, Xiaoming,Zhang, Yuanshu,Si, Fusheng,Ni, Yanyan,Huang, Yaowei. 2013

[17]Optimization and application of a DNA-launched infectious clone of equine arteritis virus. Qi, Ting,Wang, Xiaojun. 2018

[18]Construction and characterization of the infectious clone of Reticuloendotheliosis virus carrying a genetic marker. Deng, Xiaoyun,Qi, Xiaole,Wu, Guan,Gao, Yulong,Qin, Liting,Wang, Yongqiang,Gao, Honglei,Wang, Xiaomei.

[19]Mutant Rep protein of the porcine circovirus type 2 N-glycosylation:23-25aa, 256-258aa mutation reduced virus replication but 286-288aa mutation enhanced virus replication in PK-15 cells. Shi, Jianli,Peng, Zhe,Xu, Shaojian,Cong, Xiaoyan,Yuan, Xiaoyuan,Yu, Jiang,Wu, Jiaqiang,Sun, Wenbo,Du, Yijun,Li, Jun,Wang, Jinbao,Fu, Fang,Xu, Shengnan.

[20]A simple method for developing an infectious cDNA clone of Japanese encephalitis virus. Zheng, Hao,Zheng, Xuchen,Tong, Wu,Liu, Fei,Liang, Chao,Wang, Tao,Gao, Fei,Li, Liwei,Shan, Tongling,Li, Guoxin,Tong, Guangzhi,Zheng, Hao,Tong, Wu,Tong, Guangzhi.

作者其他论文 更多>>